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骨骼肌收缩活动对核基因和线粒体基因表达的调控

Regulation of nuclear and mitochondrial gene expression by contractile activity in skeletal muscle.

作者信息

Williams R S, Salmons S, Newsholme E A, Kaufman R E, Mellor J

出版信息

J Biol Chem. 1986 Jan 5;261(1):376-80.

PMID:3941082
Abstract

Increased contractile activity of skeletal muscle augments the volume fraction and enzymatic capacity of mitochondria and suppresses the enzymatic capacity of several cytoplasmic enzymes of glycolysis. To examine the biochemical mechanisms underlying these effects, we measured the concentrations of cytochrome b mRNA and aldolase A mRNA in tibialis anterior muscles of adult rabbits that had been stimulated via the motor nerve to contract continuously at 10 Hz for 5 or 21 days; these were compared with the corresponding levels in the unstimulated limbs of the same animals. After 21 days of stimulation aldolase mRNA had fallen to one-fourth of control levels, while cytochrome b mRNA had increased by 5-fold. A reduction in aldolase mRNA was already evident after only 5 days of stimulation, whereas the level of cytochrome b mRNA was not elevated at this stage. Mitochondrial DNA was unchanged after 5 days but had increased by 4-fold after 21 days. We conclude that contractile activity in skeletal muscle produces reciprocal changes in the expression of these two genes at a transcriptional level but via different regulatory mechanisms. Enhancement of the expression of the mitochondrial cytochrome b gene appears to be proportional to the increase in its copy number and may not, therefore, depend upon changes in transcriptional or translational efficiency. The reduction in aldolase A mRNA occurs at an earlier stage in the response to contractile activity and is probably mediated by a reduced transcriptional efficiency.

摘要

骨骼肌收缩活动的增强会增加线粒体的体积分数和酶活性,并抑制糖酵解的几种细胞质酶的活性。为了研究这些效应背后的生化机制,我们测量了成年兔胫前肌中细胞色素b mRNA和醛缩酶A mRNA的浓度,这些兔子通过运动神经被刺激以10Hz的频率持续收缩5天或21天;并将其与同一只动物未受刺激肢体中的相应水平进行比较。刺激21天后,醛缩酶mRNA降至对照水平的四分之一,而细胞色素b mRNA增加了5倍。仅刺激5天后,醛缩酶mRNA的减少就已很明显,而此时细胞色素b mRNA的水平并未升高。线粒体DNA在5天后未发生变化,但在21天后增加了4倍。我们得出结论,骨骼肌的收缩活动在转录水平上使这两个基因的表达产生相反的变化,但通过不同的调节机制。线粒体细胞色素b基因表达的增强似乎与其拷贝数的增加成正比,因此可能不依赖于转录或翻译效率的变化。醛缩酶A mRNA的减少在对收缩活动的反应中发生得更早,可能是由转录效率降低介导的。

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